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Updated: Mar 13, 2026

Utilizing In Vivo Postnatal Electroporation to Study Cerebellar Granule Neuron Morphology and Synapse Development
Published on: June 9, 2021
Calcium-induced apoptosis of developing cerebellar granule neurons depends causally on NGFI-B
Lars Peter Engeset Austdal1, Gro H Mathisen1, Else Marit Løberg2
1Department of Pharmaceutical Biosciences, School of Pharmacy, University of Oslo, Norway.
Abstract:
Immediate early gene nerve growth factor-induced clone B (NGFI-B), a nuclear receptor important for differentiation and apoptosis, is expressed in mice and rat cerebellum from an early stage of postnatal development. Following apoptotic stimuli NGFI-B translocates to mitochondria to initiate cell death processes. Controlled cell death is critical for correct cerebellar development. Immunohistochemical analysis of NGFI-B in sections of mice cerebella showed NGFI-B to be expressed in granule neurons in vivo at a time (P8-11) when apoptosis is known to occur. The importance of NGFI-B for apoptosis of cultured rat cerebellar granule neurons was investigated by inducing apoptosis with calcium ionophore A23187 (CaI, 0.1μM). Imaging studies of gfp-tagged NGFI-B confirmed that mitochondrial translocation of NGFI-B occurred following treatment with CaI and was reduced by addition of 9-cis-retinoic acid (1μM), a retinoid X receptor (RXR) agonist that prevents dimerization of RXR and NGFI-B that is known to occur before translocation. Consequently, 9-cis-retinoic acid partly reduced cell death. To address the causality of NGFI-B in apoptosis further, knock-down by siRNA was performed and it removed 85% of the NGFI-B protein. This resulted in a complete inhibition of apoptosis after CaI exposure. Together these findings suggest that NGFI-B plays a role in controlling correct cerebellar development.
Insights
Nerve growth factor-induced clone B (NGFI-B) is crucial for cerebellar development. Inhibiting NGFI-B completely blocked apoptosis in developing rat cerebellar neurons, highlighting its role in controlled cell death.
Area of Science:
- Neuroscience
- Molecular Biology
- Developmental Biology
Background:
- Immediate early gene NGFI-B is a nuclear receptor involved in differentiation and apoptosis.
- NGFI-B translocates to mitochondria to initiate cell death following apoptotic stimuli.
- Controlled cell death is essential for proper cerebellar development.
Purpose of the Study:
- To investigate the role of NGFI-B in apoptosis during cerebellar development.
- To determine the mechanism of NGFI-B-mediated mitochondrial translocation.
- To assess the impact of inhibiting NGFI-B on neuronal apoptosis.
Main Methods:
- Immunohistochemical analysis of NGFI-B expression in mouse cerebellum.
- Induction of apoptosis in cultured rat cerebellar granule neurons using calcium ionophore (CaI).
- Confocal imaging of GFP-tagged NGFI-B translocation and siRNA-mediated knockdown of NGFI-B.
Main Results:
- NGFI-B was expressed in cerebellar granule neurons during the period of known apoptosis (P8-11).
- CaI treatment induced mitochondrial translocation of NGFI-B, which was partially inhibited by 9-cis-retinoic acid.
- siRNA-mediated knockdown of NGFI-B completely inhibited CaI-induced apoptosis.
Conclusions:
- NGFI-B plays a critical role in initiating apoptosis in cerebellar granule neurons.
- Mitochondrial translocation of NGFI-B is a key step in the apoptotic pathway.
- Targeting NGFI-B may offer a strategy for controlling cerebellar development and related disorders.

